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Modeling and Characterization of Capacitive Coupling Intrabody Communication in an In-Vehicle Scenario

机译:车载场景中电容耦合体内通信的建模与表征

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摘要

Intrabody communication (IBC) has drawn extensive attention in the field of ubiquitous healthcare, entertainment, and more. Until now, most studies on the modeling and characterization of capacitive coupling IBC have been conducted in open space, while influences when using metallic-enclosed environments such as a car, airplane, or elevator have not yet been considered. In this paper, we aimed to systematically investigate the grounding effect of an enclosed metal wall of a vehicle on the transmission path loss, utilizing the finite element method (FEM) to model capacitive coupling IBC in an in-vehicle scenario. The results of a simulation and experimental validation indicated that the system gain in an in-vehicle scenario increased up to 7 dB compared to in open space. The modeling and characterization achieved in this paper of capacitive coupling IBC could facilitate an intrabody sensor design and an evaluation with great flexibility to meet the performance needs of an in-vehicle use scenario.
机译:Introbody沟通(IBC)在普遍存在的医疗保健,娱乐等领域中绘制了广泛的关注。到目前为止,大多数关于电容耦合IBC的建模和表征的研究已经在开放空间中进行,同时尚未考虑使用金属封闭环境,例如汽车,飞机或电梯的金属封闭环境。在本文中,我们旨在系统地研究车辆的封闭金属壁对传输路径损耗的接地效果,利用有限元方法(FEM)在车载场景中模拟电容耦合IBC。模拟和实验验证的结果表明,与开放空间相比,车载情景中的系统增益增加了7dB。本文在本文的电容耦合IBC中实现的建模和表征可以促进体内传感器设计和评估,以满足车载使用场景的性能需求。

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